材料科学
阳极
电解质
钝化
化学工程
吸附
纳米颗粒
电化学
纳米技术
沉积(地质)
图层(电子)
电极
古生物学
物理化学
工程类
有机化学
化学
生物
沉积物
作者
Jingjing Zhang,Peng Wei,Junhong Jin,Shenglin Yang,Aishui Yu,Guang Li
标识
DOI:10.1007/s40843-021-1778-2
摘要
Zn-air batteries are promising energy storage and conversion systems to replace the conventional lithium-based ones. However, their applications have been greatly hindered by the formation of Zn dendrites and ZnO passivation layer on the Zn anodes. Herein, we report the fabrication of an artificial protective layer comprised of N-doped threedi-mensional hollow porous multi-nanochannel carbon fiber with well-dispersed TiO2 nanoparticles (HMCNF). The incorporated TiO2 nanoparticles and N dopants improve the ion flux distribution and promote the surface adsorption, facilitating the interfacial pseudocapacitive behaviors during Zn deposition. The hierarchical architecture also induces homogenous electric field distribution at the anode/electrolyte interface. Accordingly, the deposition behavior of Zn is regulated, giving rise to enhanced utilization and rechargeability of Zn. When integrated in alkaline Zn-air batteries, the HMCNF-coated Zn anodes exhibit improved electrochemical performances relative to those with the bare Zn anodes, demonstrating a versatile strategy to boost energy storage of metal anodes through optimizing surface adsorption properties.
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